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首页> 外文期刊>International Journal of Power Electronics and Drive Systems >A Modified Bridgeless Converter for SRM Drive with Reduced Ripple Current
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A Modified Bridgeless Converter for SRM Drive with Reduced Ripple Current

机译:一种用于SRM驱动的改进型无桥转换器,具有降低的纹波电流

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Single Phase Switched Reluctance Motor is more popular in many industrial purposes for high speed applications because of its robust and rugged construction. For low cost and variable speed drive applications SRM are widely used.Due to doubly salient structure of motor, the torque pulsations are high when compared to other sinusoidal machines. The major drawback in using SRM drive is torque pulsations and increased number of switching components. In order to overcome these drawbacks, a bridgeless Single Ended Primary Inductor Converter (SEPIC) is proposed. The major advantages of this converter are continuous output current,smaller voltage ripple and reduced semiconductor current stress when compared to the conventional SEPIC converter. The ripple free input current is obtained by using additional winding of input inductor and auxiliary capacitors. To achieve high efficiency, active power factor correction circuits (PFC) are employed to precise the power factor. Further, the unity power factor can be obtained by making the input current during switching period proportional to the input voltage is proposed. The proposed system consists of reduced components and it is also capable of reducing the conduction losses. The working principles and the waveforms of proposed converter are analyzed. To analyze the circuit operation, theoretical analysis and simulation results are provided. Finally, the comparison between the waveforms of conventional SEPIC and proposed system is presented by using MATLAB/Simulink tools.
机译:单相开关磁阻电动机由于其坚固耐用的结构而在许多工业用途中更受高速应用的欢迎。在低成本和变速驱动应用中,SRM被广泛使用。由于电机具有双凸极结构,因此与其他正弦电机相比,转矩脉动较高。使用SRM驱动器的主要缺点是扭矩脉动和增加的开关组件数量。为了克服这些缺点,提出了一种无桥单端初级电感转换器(SEPIC)。与常规SEPIC转换器相比,该转换器的主要优点是连续输出电流,较小的电压纹波和减小的半导体电流应力。通过使用输入电感器和辅助电容器的附加绕组可获得无纹波输入电流。为了实现高效率,采用了有源功率因数校正电路(PFC)来精确调整功率因数。此外,可以通过使开关期间的输入电流与输入电压成正比来获得单位功率因数。所提出的系统包括减少的组件,并且还能够减少传导损耗。分析了所提出的转换器的工作原理和波形。为了分析电路工作,提供了理论分析和仿真结果。最后,使用MATLAB / Simulink工具对常规SEPIC波形和所建议系统的波形进行了比较。

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